Indoor light wall connecting structure and wall building process thereof
By designing lightweight wall components, connecting components, and fastening components, the problem of insufficient fastening of multi-layer lightweight wall connections was solved, achieving tight connection and coordinated stress distribution of multi-layer lightweight walls, and improving the overall stability and comfort of the structure.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-08
- Publication Date
- 2026-03-31
AI Technical Summary
Existing lightweight wall panel connection structures are prone to insufficient tightness between layers when assembling multi-layer lightweight walls, making it difficult to achieve coordinated assembly of multi-layer lightweight walls.
The design incorporates lightweight wall components, connecting components, and fastening components, including L-shaped grooves, U-shaped grooves, T-shaped grooves, rectangular grooves, limiting frames, reinforcing rods, and locking bolts. Through the combined use of snap-fit and threaded bolts, it achieves tight connection and coordinated stress distribution of multi-layer lightweight walls.
It improves the connection strength and stability of multi-layer lightweight walls, enhances the overall structure and impact resistance, improves the comfort and moisture-proof performance of lightweight wall structures, and ensures that the wall surface is flat and easy to assemble wall structures of different heights and levels.
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Figure CN117344892B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of lightweight wall connection technology, specifically to an indoor lightweight wall connection structure and its masonry process. Background Technology
[0002] Lightweight walls are a new concept that differs from solid walls. While lightweight wall materials vary in price, sound insulation, load-bearing capacity, hanging capacity, fire resistance, and waterproofing, they all share the common characteristic of being very lightweight compared to solid clay bricks. The weight per square meter is generally 5-9 times lighter than that of a solid clay brick wall. Even when the wall is built on a floor slab, it is completely within the design load-bearing capacity of the floor slab, and its performance in terms of heat insulation, thermal insulation, fire resistance, anti-aging, and impact resistance can basically meet the requirements.
[0003] For example, the patent application number CN201920111474.1 discloses a lightweight wall panel connection structure. Similar to the lightweight wall panel connection structure mentioned above, there are still some shortcomings: the existing lightweight wall panel connection structure is usually suitable for the assembly of single-layer lightweight walls. When assembling multi-layer lightweight walls, the connection between layers is often not tight enough, making it inconvenient to assemble multi-layer lightweight walls simultaneously.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and proposed an indoor lightweight wall connection structure and its masonry process. Summary of the Invention
[0005] To address the shortcomings of existing technologies, this invention provides an indoor lightweight wall connection structure and its masonry process, solving the problems mentioned in the background section.
[0006] To achieve the above objectives, the present invention provides the following technical solution: an indoor lightweight wall connection structure and its masonry process, comprising a lightweight wall component, a connecting component, and a fastening component. A connecting component is installed in the middle of both sides of the surface of the lightweight wall component, and a fastening component is installed on the upper outer side of the lightweight wall component. L-shaped grooves are provided on both sides of the surface of the lightweight wall component, and a U-shaped groove is formed inside the back of the lightweight wall component. A T-shaped groove is provided in the middle of the surface of the lightweight wall component, and rectangular grooves are formed on both sides of the back of the lightweight wall component. The fastening component includes a limiting frame, a reinforcing rod, and locking bolts. The limiting frame has a "U"-shaped structure, and its upper side is grooved. A reinforcing rod with an "X"-shaped structure is fixed inside the groove on the upper side of the limiting frame. Locking bolts are provided on both sides of the limiting frame.
[0007] Furthermore, the lightweight wall assembly includes a first wall, a second wall, and a third wall, and the first wall, the second wall, and the third wall are of the same size. The second wall is provided on the side of the first wall, and the third wall is provided on the front side of the first wall and the second wall. The first wall and the second wall are arranged side by side on the rear end face and attached to the interior wall, while the third wall is located on the front end face of the position where the first wall and the second wall are connected and forms a cover.
[0008] Furthermore, the connecting component includes an inner frame groove and a fixing block. The inner frame groove has a rectangular groove structure, and the inner frame grooves are symmetrically arranged about the vertical center line of the first wall. A vertically arranged fixing block is fixed inside the inner frame groove.
[0009] Furthermore, the connecting component also includes a positioning pin and a threaded bolt. The positioning pin is inserted through both the upper and lower sides of the inside of the fixing block, and a threaded bolt is installed on the outside of the positioning pin. The L-shaped grooves of the first wall and the second wall correspond to the U-shaped grooves of the third wall, and the length of the L-shaped groove and the U-shaped groove is 2 / 5 of the length of the lightweight wall component.
[0010] Furthermore, the T-shaped groove of the first or second wall corresponds to the rectangular groove of the two third walls, and the length of the T-shaped groove and the rectangular groove is consistent with the length of the lightweight wall component.
[0011] Furthermore, a first connector is installed inside the reserved groove formed by the L-shaped groove of the first wall and the second wall and the U-shaped groove of the third wall; a second connector is installed inside the reserved groove formed by the T-shaped groove of the first wall or the second wall and the rectangular grooves of the two third walls.
[0012] Furthermore, the first connecting member includes a first concentrator and a first dispersive member. The first dispersive member is located inside the first concentrator and is slidably connected to its inner surface. The first concentrator has a hollow structure inside and a locking member in the middle. The locking member has a locking switch inside. The two ends of the locking member are respectively limited to the first dispersive member. The locking member has two sliding rods on both sides. Each first dispersive member has two cylindrical grooves on the left and right. The end of the sliding rod away from the first concentrator has a limiting pin. The limiting pin is slidably connected to the cylindrical groove. The axis of the sliding rod is the same as the axis of the cylindrical groove.
[0013] Furthermore, the second connecting member includes a second concentrator and a second dispersive member. The second dispersive member is located inside the second concentrator and is slidably connected to its inner surface. The interior of the second concentrator is a hollow structure and a locking member is provided in the middle. The locking member has a locking switch inside. The two ends of the locking member are respectively limited and connected to the second dispersive member. There are two sliding rods on both sides of the locking member. Each second dispersive member has two cylindrical grooves on the left and right. The two ends of the sliding rods away from the second concentrator are provided with limiting pins. The limiting pins are slidably connected to the cylindrical grooves. The axis of the sliding rods is the same as the axis of the cylindrical grooves.
[0014] Furthermore, the bricklaying process includes the following specific steps:
[0015] Step 1: Dilute the glue and stir it evenly, then add it to the cement and stir to form a thick mortar. Apply the mortar to the joint surface of the first wall and the second wall. Then squeeze the sides of the first wall and the second wall tightly together and remove the excess mortar. Next, use the positioning pin to pass through the fixing block and tighten the joint surface of the first wall and the second wall. Then use the threaded bolt to lock and fix it so that the two are tightly attached.
[0016] Step 2: Next, pour concrete or mortar into the empty groove of the inner frame groove, and then cover the third wall in front of the joint between the first wall and the second wall, so that the vertical center line of the third wall coincides with the first wall and the second wall. Similarly, apply adhesive evenly to the joint surface of the three.
[0017] Step 3: Then, insert the first connector into the reserved groove formed by the L-shaped groove of the first wall, the second wall and the U-shaped groove of the third wall, and insert the second connector into the reserved groove formed by the T-shaped groove of the first wall or the second wall and the rectangular groove of the two third walls. The first connector and the second connector work together to make the first wall and the second wall on the left and right sides tightly connected to the third wall in front.
[0018] Step 4: Assemble the three-layer lightweight wall structure in sequence as described in Steps 1 to 3. After the first, second, and third walls of the multiple lightweight wall components are assembled and connected in sequence, clean the wall ends. Then, install a covering limiting frame on the upper side of the lightweight wall components so that the limiting frame can simultaneously fasten and limit the three-layer lightweight wall structure. Then, use locking bolts to lock and fix the limiting frame to the lightweight wall components.
[0019] Step 5: After all the assembly is completed, fill the empty slots of the multiple L-shaped, U-shaped, T-shaped, and rectangular slots on the front and back of the first, second, and third walls with fine stone concrete containing flame-retardant asbestos. After the fine stone concrete hardens, fill it neatly with cement mortar.
[0020] This invention provides an indoor lightweight wall connection structure and its masonry process, which has the following beneficial effects:
[0021] 1. The indoor lightweight wall connection structure and its masonry process are equipped with lightweight wall components. The first connector, the second connector, and L-shaped grooves, U-shaped grooves, T-shaped grooves, and rectangular grooves at different positions are connected by a snap-fit structure, which reduces the use of bolts and makes the connection and assembly more convenient. Furthermore, the shape of the second connector and the first connector allows the first wall, the second wall, and the third wall to work together to bear the force, resulting in high connection strength and preventing the movement of individual lightweight walls.
[0022] 2. The interior lightweight wall connection structure and its masonry process are equipped with connecting components. By using positioning pins to pass through the fixing blocks and tighten them, the first wall and the second wall can be tightly fitted together. Threaded bolts are used to easily lock and fix the two together. This allows the first wall, the second wall, or the third wall in the same row of the three-layer lightweight wall to be tightly combined with each other. The inner frame groove has a rectangular groove structure so that there is no protruding surface on the wall. The groove structure can be filled with cement or mortar.
[0023] 3. The indoor lightweight wall connection structure and its masonry process are equipped with fastening components. The reinforcing rod with an "X" shape can enhance the structural strength and tensile strength of the limiting frame. The limiting frame with a "U" shape is assembled on the upper outer side of the three-layer lightweight wall to fasten and limit the three-layer lightweight wall structure, thereby increasing the tightness of the structural connection, preventing the three-layer lightweight wall from loosening, and greatly enhancing the structural strength of the three-layer lightweight wall.
[0024] 4. This interior lightweight wall connection structure is equipped with a detachable first connector and a second connector, which can be used to extend and retract the height of the wall panels to facilitate the construction of lightweight wall structures of different heights and levels. At the same time, the extension and retraction structure will cause a partial loss of integrity in the interior of the wall. This device compensates for the lack of integrity in the mechanism by setting multiple longitudinal threaded steel sliding rods one and two, and brings new benefits to the lightweight wall structure, such as: improving the lateral impact resistance of the structure, enhancing the buffering capacity of the steel structure to cope with strong instantaneous impacts, and effectively improving the overall stability of the lightweight wall structure.
[0025] 5. Due to the clamping and fixing effect of the fastening components, the first and second walls are the outermost walls, and the third wall is the inner connecting wall. By filling the interior of the connecting wall with jute, the moisture-proof performance of the lightweight wall structure is improved and the wall life is extended. Filling the interior of the outer walls (first and second walls) with 4080 fiber (non-adhesive cotton) improves the comfort performance of thermal insulation, sound absorption and other properties, effectively improving the comfort of the lightweight wall structure. Attached Figure Description
[0026] Figure 1 This is a front view of the assembly structure of an indoor lightweight wall connection structure and its masonry process according to the present invention.
[0027] Figure 2 This is a top-view half-section structural diagram of an indoor lightweight wall connection structure and its masonry process according to the present invention.
[0028] Figure 3 This is a rear view of the external structure of an indoor lightweight wall connection structure and its masonry process according to the present invention.
[0029] Figure 4 This is a top view of the external structure of an indoor lightweight wall connection structure and its masonry process according to the present invention.
[0030] Figure 5 This is a three-dimensional structural diagram of the first connecting component of an indoor lightweight wall connection structure and its masonry process according to the present invention.
[0031] Figure 6 This is a three-dimensional structural diagram of the second connector of the indoor lightweight wall connection structure and its masonry process according to the present invention.
[0032] Figure 7 This is a three-dimensional structural diagram of a limiting frame for an indoor lightweight wall connection structure and its masonry process according to the present invention.
[0033] Figure 8 This is a partially exploded structural diagram of the second connector of the indoor lightweight wall connection structure and its masonry process according to the present invention.
[0034] Figure 9 This is a partially exploded structural diagram of the first connector of the indoor lightweight wall connection structure and its masonry process according to the present invention.
[0035] Figure 10 This is a cross-sectional schematic diagram of the first and second connectors of an indoor lightweight wall connection structure and its masonry process according to the present invention.
[0036] In the diagram: 1. Lightweight wall assembly; 101. First wall; 102. Second wall; 103. Third wall; 2. Connecting assembly; 201. Inner frame groove; 202. Fixing block; 203. Positioning pin; 204. Threaded bolt; 3. L-shaped groove; 4. U-shaped groove; 5. T-shaped groove; 6. Rectangular groove; 7. First connector; 701. First concentrator; 702. First distributor; 703. Slide rod; 704. Limit pin; 705. Cylindrical groove; 706. Locking component; 707. Locking switch;
[0037] 8. Second connecting component; 801. Second concentrating component; 802. Second dispersing component; 803. Second sliding rod; 804. Second limiting pin; 805. Second cylindrical groove; 806. Second locking component; 807. Second locking switch; 9. Fastening assembly; 901. Limiting frame; 902. Reinforcing rod; 903. Locking bolt. Detailed Implementation
[0038] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.
[0039] Please see Figures 1 to 7 The present invention provides a technical solution: an indoor lightweight wall connection structure and its wall construction process, comprising a lightweight wall component 1, a connecting component 2, and a fastening component 9. The connecting component 2 is installed in the middle of both sides of the surface of the lightweight wall component 1, and the fastening component 9 is installed on the upper outer side of the lightweight wall component 1. L-shaped grooves 3 are provided on both sides of the surface of the lightweight wall component 1, and U-shaped grooves 4 are opened inside the back of the lightweight wall component 1. T-shaped grooves 5 are provided in the middle of the surface of the lightweight wall component 1, and rectangular grooves 6 are opened on both sides of the back of the lightweight wall component 1. The fastening component 9 includes a limiting frame 901, a reinforcing rod 902, and a locking bolt 903. The limiting frame 901 has a "U" shaped structure, and the upper side of the limiting frame 901 is grooved. The reinforcing rod 902 is fixed in the groove on the upper side of the limiting frame 901, and the reinforcing rod 902 has an "X" shaped structure. Locking bolts 903 are provided on both sides of the limiting frame 901.
[0040] The specific operation is as follows: the reinforcing rod 902 with an "X" shape can enhance the structural strength and tensile strength of the limiting frame 901. The limiting frame 901 with a "U" shape is assembled on the upper outer side of the three-layer lightweight wall to fasten and limit the structure of the three-layer lightweight wall, thereby increasing the tightness of the structural connection, preventing the three-layer lightweight wall from loosening, and greatly enhancing the structural strength of the three-layer lightweight wall.
[0041] Please see Figures 1 to 2 The lightweight wall assembly 1 includes a first wall 101, a second wall 102, and a third wall 103, all of which have the same dimensions. The second wall 102 is located on the side of the first wall 101, and the third wall 103 is located on the front side of the first wall 101 and the second wall 102. The connecting assembly 2 includes an inner frame groove 201 and a fixing block 202. The inner frame groove 201 has a rectangular groove structure and is symmetrically arranged about the vertical center line of the first wall 101. The fixing block 202 is fixed inside the inner frame groove 201. The connecting assembly 2 also includes a positioning pin 203 and a threaded bolt 204. The positioning pin 203 passes through the upper and lower sides of the fixing block 202, and the threaded bolt 204 is installed on the outer side of the positioning pin 203.
[0042] The specific operation is as follows: by inserting the positioning pin 203 through the fixing block 202 and tightening it, the first wall 101 and the second wall 102 can be tightly fitted together. The threaded bolt 204 is used to lock and fix the two together, so that the first wall 101, the second wall 102 or the third wall 103 in the same row of the three-layer lightweight wall can be tightly combined with each other. The inner frame groove 201 has a rectangular groove structure so that there is no protruding surface on the wall surface, and the groove structure can be filled with cement or mortar.
[0043] Please see Figures 1 to 7 The L-shaped grooves 3 of the first wall 101 and the second wall 102 correspond to the U-shaped grooves 4 of the third wall 103, and the lengths of the L-shaped grooves 3 and U-shaped grooves 4 are 2 / 5 of the length of the lightweight wall component 1; the T-shaped grooves 5 of the first wall 101 or the second wall 102 correspond to the rectangular grooves 6 of the two third walls 103, and the lengths of the T-shaped grooves 5 and rectangular grooves 6 are the same as the length of the lightweight wall component 1; a first connector 7 is installed inside the reserved groove formed by the L-shaped grooves 3 of the first wall 101 and the second wall 102 and the U-shaped grooves 4 of the third wall 103; a second connector 8 is installed inside the reserved groove formed by the T-shaped grooves 5 of the first wall 101 or the second wall 102 and the rectangular grooves 6 of the two third walls 103.
[0044] The specific operation is as follows: the first connector 7, the second connector 8 and the L-shaped groove 3, U-shaped groove 4, T-shaped groove 5 and rectangular groove 6 at different positions are connected by a snap-fit structure to reduce the use of bolts and make the connection and assembly more convenient. In addition, the shape of the second connector 8 and the first connector 7 allows the first wall 101, the second wall 102 and the third wall 103 to work together to bear the force, resulting in high connection strength and preventing the movement of individual lightweight walls.
[0045] In another specific embodiment of the present invention, please refer to Figure 8-10 The first connecting member 7 includes a first concentrator 701 and a first dispersor 702. The first dispersor 702 is located inside the first concentrator 701 and is slidably connected to its inner surface. The first concentrator 701 has a hollow structure inside and a locking member 706 is provided in the middle. The locking member has a locking switch 707 inside. The two ends of the locking member 706 are respectively limited to the first dispersor 702. The locking member 706 has two sliding rods 703 on both sides. Each first dispersor 702 has two cylindrical grooves 705 on both sides. The end of the sliding rod 703 away from the first concentrator 701 is provided with a limiting pin 704. The limiting pin 704 is slidably connected to the cylindrical groove 705. The axis position of the sliding rod 703 is the same as the axis position of the cylindrical groove 705.
[0046] In addition, the second connecting member 8 includes a second concentrator 801 and a second dispersive member 802. The second dispersive member 802 is located inside the second concentrator 801 and is slidably connected to its inner surface. The interior of the second concentrator 801 is a hollow structure and a locking member 806 is provided in the middle. The locking member is provided with a locking switch 807. The two ends of the locking member 806 are respectively limited to the second dispersive member 802. The locking member 806 is provided with two left and right sliding rods 803 on both sides. Each second dispersive member 802 is provided with two left and right cylindrical grooves 805. The two ends of the sliding rods 803 away from the second concentrator 801 are provided with limiting pins 804. The limiting pins 804 are slidably connected to the cylindrical grooves 805. The axis position of the sliding rods 803 is the same as the axis position of the cylindrical grooves 805.
[0047] The locking components one and two in this embodiment include, but are limited to, spring-unlocking and press-unlocking locking and unlocking methods. When using the spring-unlocking method, a connecting block is provided at one end of the dispersing component and connected to the spring. The locking switch 707 is connected to the spring. When pressed, the spring is unlocked, and after it automatically pops out, the length of the first connecting component 7 and the second connecting component 8 can be manually adjusted. When using the press-unlocking method, a connecting block is provided at one end of the dispersing component, and a limit buckle is provided below the locking switch. The limit and the locking limit are released by the axial change of the press rebound, thereby adjusting the length of the first connecting component 7 and the second connecting component 8. It is worth mentioning that the material of the slide rod can be threaded steel. The connection port of the cylindrical groove is connected to the threaded steel with internal threads, or a bearing with internal threads is used for connection to facilitate positioning. Multi-level circular corrugated steel can also be used. The lifting and lowering of each level of corrugation after unlocking is manually adjusted. This device only needs to obtain the detachable and adjustable telescopic benefits, and does not impose unnecessary restrictions on its structure, connection method and material process, as long as it meets the telescopic requirements.
[0048] Please see Figures 1 to 7 The bricklaying process includes the following specific steps:
[0049] Step 1: Dilute the glue and stir it evenly, then add it to the cement and stir to form a viscous mortar. Apply the mortar to the joint surface of the first wall 101 and the second wall 102. Then squeeze the sides of the first wall 101 and the second wall 102 tightly together and remove the excess mortar. Next, use the positioning pin 203 to pass through the fixing block 202 and tighten the joint surface of the first wall 101 and the second wall 102. Then use the threaded bolt 204 to lock and fix it so that the two are tightly attached.
[0050] Step 2: Next, pour concrete or mortar into the empty groove of the inner frame groove 201, and then cover the third wall 103 in front of the joint between the first wall 101 and the second wall 102, so that the vertical center line of the third wall 103 coincides with the first wall 101 and the second wall 102. Similarly, apply adhesive evenly to the joint surface of the three.
[0051] Step 3: Then, insert the first connector 7 into the reserved groove formed by the L-shaped groove 3 of the first wall 101 and the second wall 102 and the U-shaped groove 4 of the third wall 103, and insert the second connector 8 into the reserved groove formed by the T-shaped groove 5 of the first wall 101 or the second wall 102 and the rectangular grooves 6 of the two third walls 103. The first connector 7 and the second connector 8 make the first wall 101 and the second wall 102 on the left and right sides tightly connected to the third wall 103 in front.
[0052] Step 4: Assemble the three-layer lightweight wall structure in the same way as Steps 1 to 3. After the first wall 101, the second wall 102 and the third wall 103 of the multiple sets of lightweight wall components 1 are assembled and connected in sequence, clean the wall head. Then, install the covering limiting frame 901 on the upper side of the lightweight wall component 1 so that the limiting frame 901 can simultaneously fasten and limit the three-layer lightweight wall structure. Then, use the locking bolt 903 to lock and fix the limiting frame 901 to the lightweight wall component 1.
[0053] Step 5: After all the assembly is completed, fill the empty slots of multiple L-shaped grooves 3, U-shaped grooves 4, T-shaped grooves 5 and rectangular grooves 6 on the front and back of the first wall 101, the second wall 102 and the third wall 103 with fine stone concrete containing flame-retardant asbestos. After the fine stone concrete hardens, fill it neatly with cement mortar.
[0054] In summary, the construction process of this lightweight interior wall connection structure involves first diluting and mixing the adhesive with cement to form a viscous mortar. This mortar is then applied to the joint surfaces of the first wall 101 and the second wall 102. Next, the sides of the first wall 101 and the second wall 102 are pressed tightly together, and excess mortar is removed. Then, the positioning pin 203 is inserted through the fixing block 202 and tightened onto the joint surfaces of the first wall 101 and the second wall 102. Finally, the threaded bolt 204 is used to lock and secure the joint, ensuring a tight fit. This assembly process allows for a tight connection between any two of the first wall 101, the second wall 102, or the third wall 103 in the same row of the three-layer lightweight wall system.
[0055] Next, concrete or mortar is poured into the empty groove of the inner frame groove 201. Then, the third wall 103 is placed in front of the joint between the first wall 101 and the second wall 102, so that the vertical center line of the third wall 103 coincides with the first wall 101 and the second wall 102. Similarly, adhesive is evenly applied to the joint surfaces of the three. Then, the first connector 7 is installed in the reserved groove formed by the L-shaped groove 3 of the first wall 101 and the second wall 102 and the U-shaped groove 4 of the third wall 103. The second connector 8 is installed inside the reserved groove formed by the T-shaped groove 5 of the first wall 101 or the second wall 102 and the rectangular groove 6 of the two third walls 103. The first connector 7 cooperates with the second connector 8 to make the first wall 101 and the second wall 102 on the left and right sides and the third wall 103 in front tightly connected, so that the first wall 101, the second wall 102 and the third wall 103 can work together to bear the force, with high connection strength, and avoid the movement of individual lightweight walls.
[0056] Then, following the same steps as above, assemble the three-layer lightweight wall structure in sequence. After the first wall 101, second wall 102, and third wall 103 of the multiple lightweight wall components 1 are assembled and connected in sequence, clean the wall ends. Then, install the covering limiting frame 901 on the upper side of the lightweight wall component 1, so that the limiting frame 901 simultaneously tightens and limits the three-layer lightweight wall structure. Then, use locking bolts 903 to lock and fix the limiting frame 901 to the lightweight wall component 1. The limiting frame 901 is assembled in a "U" shape on the upper outer side of the three-layer lightweight wall to tighten and limit the three-layer lightweight wall structure. After all the assembly is completed, fill the empty grooves of multiple L-shaped grooves 3, U-shaped grooves 4, T-shaped grooves 5, and rectangular grooves 6 on the front and back of the first wall 101, second wall 102, and third wall 103 with fine stone concrete containing flame-retardant asbestos. After the fine stone concrete hardens, fill it neatly with cement mortar. This completes the entire process of using the indoor lightweight wall connection structure and its masonry technique.
[0057] The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and to design various embodiments with various modifications suitable for a particular purpose.
Claims
1. An indoor lightweight wall connection structure, characterized in that, The utility model provides a light wall body assembly (1), the interface assembly (2) and fastening assembly (9) are included, the interface assembly (2) is installed in the middle position of both sides of the surface of light wall body assembly (1), and the fastening assembly (9) is installed on the upper outer side of light wall body assembly (1), both sides of the surface of light wall body assembly (1) is provided with L type groove (3), the back of light wall body assembly (1) is provided with U type groove (4) inside, the surface middle part of light wall body assembly (1) is provided with T type groove (5), and the back of light wall body assembly (1) is provided with rectangular groove (6) on both sides, the fastening assembly (9) includes limiting frame (901), reinforcing rod (902) and locking bolt (903), the limiting frame (901) is " U " structure, and the upper side of limiting frame (901) is recessed, the reinforcing rod (902) is fixed in the upper side recess of limiting frame (901), and the reinforcing rod (902) is " X " structure, the both sides of limiting frame (901) are provided with locking bolt (903). The light wall body assembly (1) includes a first wall body (101), a second wall body (102), and a third wall body (103), and the first wall body (101), the second wall body (102), and the third wall body (103) are of the same size. The side of the first wall body (101) is provided with the second wall body (102), and the front side of the first wall body (101) and the second wall body (102) is provided with the third wall body (103). The first wall body (101) and the second wall body (102) are arranged side by side at the rear end surface and are attached to the indoor wall body, and the third wall body (103) is located at the front end surface of the connection position of the first wall body (101) and the second wall body (102) and forms a cover.
2. A structure for connecting interior light walls according to claim 1, wherein The interface assembly (2) includes an inner frame groove (201) and a fixed block (202). The inner frame groove (201) is in a rectangular recess structure, and the inner frame groove (201) is symmetrically arranged about the vertical center line of the first wall body (101) in the middle part, and the inner frame groove (201) is internally fixed with a vertically arranged fixed block (202).
3. A structure for connecting interior light walls according to claim 2, wherein The interface assembly (2) further includes a positioning pin (203) and a threaded bolt (204). The inside of the fixed block (202) is penetrated by a horizontally arranged positioning pin (203) on both the upper and lower sides, and the outer side of the positioning pin (203) is provided with a threaded bolt (204). The L-shaped groove (3) of the first wall body (101) and the second wall body (102) corresponds in position to the U-shaped groove (4) of the third wall body (103), and the length of the L-shaped groove (3) and the U-shaped groove (4) is 2 / 5 of the length of the light wall body assembly (1).
4. A structure for connecting interior light walls according to claim 3, wherein The T-shaped groove (5) of the first wall body (101) or the second wall body (102) corresponds in position to the rectangular grooves (6) of the two third wall bodies (103), and the length of the T-shaped groove (5) and the rectangular grooves (6) is consistent with the length of the light wall body assembly (1).
5. A structure for connecting interior light walls according to claim 4, wherein The first connecting piece (7) is installed in the reserved groove formed by the L-shaped groove (3) of the first wall body (101) and the second wall body (102) and the U-shaped groove (4) of the third wall body (103), so that the first connecting piece (7) is locked synchronously with the first wall body (101), the second wall body (102) and the third wall body (103).
6. A structure for connecting interior light walls according to claim 5, wherein The second connecting piece (8) is installed in the reserved groove formed by the T-shaped groove (5) of the first wall body (101) or the second wall body (102) and the rectangular groove (6) of the two third wall bodies (103); the first wall body (101) and the second wall body are internally provided with a hollow structure and filled with 4080 fibers, and the third wall body (103) is internally provided with a hollow structure and filled with jute.
7. A structure for connecting interior light walls according to claim 5, wherein The first connecting piece (7) comprises a first concentrator (701) and a first disperser (702), the first disperser (702) is located in the interior of the first concentrator (701) and is in sliding connection with the inner surface thereof, the interior of the first concentrator (701) is a hollow structure and is provided with a locking piece one (706) in the middle part, the locking piece one (706) is internally provided with a locking switch one (707), the two ends of the locking piece one (706) are respectively in limiting connection with the first disperser (702), the locking piece one (706) is provided with two left and right sliding rods one (703) on the two sides thereof, each first disperser (702) is provided with two left and right cylindrical grooves one (705), the end of the sliding rod one (703) away from the first concentrator (701) is provided with a limiting pin one (704), the limiting pin one (704) is in sliding connection with the cylindrical groove one (705), and the axis position of the sliding rod one (703) is the same as that of the cylindrical groove one (705).
8. A structure for connecting interior light walls according to claim 6, wherein The second connecting piece (8) comprises a second concentrator (801) and a second disperser (802), the second disperser (802) is located in the interior of the second concentrator (801) and is in sliding connection with the inner surface thereof, the interior of the second concentrator (801) is a hollow structure and is provided with a locking piece two (806) in the middle part, the locking piece two (806) is internally provided with a locking switch two (807), the two ends of the locking piece two (806) are respectively in limiting connection with the second disperser (802), the locking piece two (806) is provided with two left and right sliding rods two (803) on the two sides thereof, each second disperser (802) is provided with two left and right cylindrical grooves two (805), the two ends of the sliding rod two (803) away from the second concentrator (801) are provided with limiting pins two (804), the limiting pins two (804) are in sliding connection with the cylindrical grooves two (805), and the axis position of the sliding rod two (803) is the same as that of the cylindrical groove two (805).
9. A process for constructing a wall of a lightweight wall construction according to any one of claims 1 to 8, characterized in that The wall building process comprises the following specific steps: Step one, after the glue is diluted and stirred evenly, add it into the cement, stir to form a thick paste, apply the paste on the interface of the first wall (101) and the second wall (102), then squeeze the side of the first wall (101) and the second wall (102) tightly, remove the excess paste, then pass through the positioning pin (203) through the fixed block (202) and tighten the first wall (101) and the second wall (102), then use the threaded bolt (204) to lock and fix, so that the two are tightly attached; Step two, then pour concrete or mortar into the empty slot of the inner frame slot (201), then cover the third wall (103) in front of the interface of the first wall (101) and the second wall (102), so that the vertical center line of the third wall (103) coincides with the first wall (101) and the second wall (102), and the same applies to the uniform coating of the paste on the interface of the three walls; Step three, then install the first connecting piece (7) in the reserved slot formed by the L-shaped slot (3) of the first wall (101) and the second wall (102) and the U-shaped slot (4) of the third wall (103), and install the second connecting piece (8) in the reserved slot formed by the T-shaped slot (5) of the first wall (101) or the second wall (102) and the rectangular slot (6) of the two third walls (103), the first connecting piece (7) cooperates with the second connecting piece (8) to make the left and right first walls (101) and the second walls (102) and the front third wall (103) connect tightly; Step four, steps one to three are sequentially assembled into a three-layer light wall structure, after the first wall (101), the second wall (102) and the third wall (103) of the light wall assembly (1) are sequentially assembled and connected, clean the wall head, then install the covering limiting frame (901) on the upper side of the light wall assembly (1), so that the limiting frame (901) simultaneously fastens and limits the three-layer light wall structure, then lock the limiting frame (901) and the light wall assembly (1) with the locking bolt (903); Step five, after all the assembly is completed, fill the fine stone concrete containing fire-retardant asbestos into the empty slots of the L-shaped slot (3), the U-shaped slot (4), the T-shaped slot (5) and the rectangular slot (6) on the front and back of the first wall (101), the second wall (102) and the third wall (103), and then fill the fine stone concrete with cement mortar after it hardens.
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